Christopher A. Hinckley

Affiliations: 
Salk Institute for Biological Studies, La Jolla, CA, United States 
Area:
Spinal Cord Physiology, Locomtor networks
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"Christopher Hinckley"
Mean distance: 15.7 (cluster 11)
 
SNBCP

Parents

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Lea Ziskind-Conhaim grad student 2008 UW Madison
 (Hb9-expressing interneurons in the locomotor central pattern generator.)
Samuel L. Pfaff post-doc Salk Institute
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Publications

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Hayashi M, Hinckley CA, Driscoll SP, et al. (2018) Graded Arrays of Spinal and Supraspinal V2a Interneuron Subtypes Underlie Forelimb and Hindlimb Motor Control. Neuron
Sternfeld MJ, Hinckley CA, Moore NJ, et al. (2017) Speed and segmentation control mechanisms characterized in rhythmically-active circuits created from spinal neurons produced from genetically-tagged embryonic stem cells. Elife. 6
Hilde KL, Levine AJ, Hinckley CA, et al. (2016) Satb2 Is Required for the Development of a Spinal Exteroceptive Microcircuit that Modulates Limb Position. Neuron
Amin ND, Bai G, Klug JR, et al. (2015) Loss of motoneuron-specific microRNA-218 causes systemic neuromuscular failure. Science (New York, N.Y.). 350: 1525-9
Hinckley CA, Alaynick WA, Gallarda BW, et al. (2015) Spinal Locomotor Circuits Develop Using Hierarchical Rules Based on Motorneuron Position and Identity. Neuron. 87: 1008-21
Levine AJ, Hinckley CA, Hilde KL, et al. (2014) Identification of a cellular node for motor control pathways. Nature Neuroscience. 17: 586-93
Hinckley CA, Pfaff SL. (2013) Imaging spinal neuron ensembles active during locomotion with genetically encoded calcium indicators. Annals of the New York Academy of Sciences. 1279: 71-9
Hinckley CA, Wiesner EP, Mentis GZ, et al. (2010) Sensory modulation of locomotor-like membrane oscillations in Hb9-expressing interneurons. Journal of Neurophysiology. 103: 3407-23
Ziskind-Conhaim L, Hinckley CA. (2008) Hb9 versus type 2 interneurons. Journal of Neurophysiology. 99: 1044-6; author reply
Hinckley CA, Ziskind-Conhaim L. (2006) Electrical coupling between locomotor-related excitatory interneurons in the mammalian spinal cord. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 26: 8477-83
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